Mechanism of cholera toxin action: Covalent modification of the guanyl nucleotide-binding protein of the adenylate cyclase system

Механизм действия холерного токсина: ковалентная модификация гуанилнуклеотид-связывающего белка аденилатциклазной системы
Dan Cassel, Thomas Pfeuffer
1978-06-01

ADP-ribosylationGTP-binding proteinadenylate cyclasecholera toxinpigeon erythrocyte membranes
Treatment of pigeon erythrocyte membranes with cholera toxin and NAD(+) enhanced the GTP stimulation and suppressed the F(-) activation of the adenylate cylase [ATP pyrophosphate-lyase (cyclizing), EC 4.6.1.1]. In the presence of NAD(+) labeled with (32)P in the AMP moiety the toxin catalyzed the covalent incorporation of radioactivity into membrane proteins with molecular weights (M(r)s) of 200,000, 86,000, and 42,000. Extraction of toxin-treated membranes with Lubrol PX followed by affinity chromatography on a GTP-Sepharose column resulted in a 200-fold purification of the 42,000-M(r) labeled protein and in its complete separation from the other labeled proteins. The fraction containing the purified GTP-binding component from toxin-treated membranes conferred an enhanced GTP-stimulated activity on adenylate cyclase solubilized from nontreated membranes. Likewise, the addition of GTP-binding fraction from nontreated membranes to an enzyme solubilized from toxin-treated membranes restored F(-) stimulation of the adenylate cyclase. The toxin-induced modification of adenylate cyclase and the incorporation of radioactivity into the 42,000-M(r) protein were partially reversed upon incubation with toxin and nicotinamide at pH 6.1. The results indicate that cholera toxin affects the adenylate cyclase system by catalyzing an ADP-ribosylation of the 42,000-M(r) component bearing the guanyl nucleotide regulatory site.
1
Cholera toxin and NAD+ enhanced GTP stimulation while suppressing fluoride activation of adenylate cyclase in pigeon erythrocyte membranes.
2
Cholera toxin effects and labeling of the 42,000-molecular-weight protein were partially reversed by toxin and nicotinamide, indicating ADP-ribosylation of the guanyl nucleotide regulatory component.
3
GTP-Sepharose affinity chromatography purified the labeled 42,000-molecular-weight protein 200-fold and separated it completely from other labeled proteins.
4
The purified toxin-modified GTP-binding component transferred enhanced GTP-stimulated adenylate cyclase activity to untreated membranes, while untreated component restored fluoride stimulation in toxin-treated enzyme.
5
Using radiolabeled NAD+, cholera toxin covalently incorporated radioactivity into membrane proteins of 200,000, 86,000, and 42,000 molecular weights.

The cholera toxin–sensitive guanyl nucleotide-binding component of the adenylate cyclase system in pigeon erythrocyte membranes

Cholera toxin–catalyzed ADP-ribosylation of the 42,000-Mr guanyl nucleotide-binding component and its effects on GTP- and fluoride-regulated adenylate cyclase activity

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1978-06-01
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Dan Cassel
Thomas Pfeuffer
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